首页> 美国卫生研究院文献>Journal of Bacteriology >Multiple domains in endoglucanase B (CenB) from Cellulomonas fimi: functions and relatedness to domains in other polypeptides.
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Multiple domains in endoglucanase B (CenB) from Cellulomonas fimi: functions and relatedness to domains in other polypeptides.

机译:来自纤维单胞菌的内切葡聚糖酶B(CenB)中的多个域:功能和与其他多肽中域的相关性。

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摘要

Endoglucanase B (CenB) from the bacterium Cellulomonas fimi is divided into five discrete domains by linker sequences rich in proline and hydroxyamino acids (A. Meinke, C. Braun, N. R. Gilkes, D. G. Kilburn, R. C. Miller, Jr., and R. A. J. Warren, J. Bacteriol. 173:308-314, 1991). The catalytic domain of 608 amino acids is at the N terminus. The sequence of the first 477 amino acids in the catalytic domain is related to the sequences of cellulases in family E, which includes procaryotic and eucaryotic enzymes. The sequence of the last 131 amino acids of the catalytic domain is related to sequences present in a number of cellulases from different families. The catalytic domain alone can bind to cellulose, and this binding is mediated at least in part by the C-terminal 131 amino acids. Deletion of these 131 amino acids reduces but does not eliminate activity. The catalytic domain is followed by three domains which are repeats of a 98-amino-acid sequence. The repeats are approximately 50% identical to two repeats of 95 amino acids in a chitinase from Bacillus circulans which are related to fibronectin type III repeats (T. Watanabe, K. Suzuki, K. Oyanagi, K. Ohnishi, and H. Tanaka, J. Biol. Chem. 265:15659-15665, 1990). The C-terminal domain of 101 amino acids is related to sequences, present in a number of bacterial cellulases and xylanases from different families, which form cellulose-binding domains (CBDs). It functions as a CBD when fused to a heterologous polypeptide. Cells of Escherichia coli expressing the wild-type cenB gene accumulate both native CenB and a stable proteolytic fragment of 41 kDa comprising the three repeats and the C-terminal CBD. The 41-kDa polypeptide binds to cellulose but lacks enzymatic activity.
机译:来自纤维状纤维单胞菌的内切葡聚糖酶B(CenB)通过富含脯氨酸和羟氨基酸的接头序列分为五个离散域(A. Meinke,C。Braun,NR Gilkes,DG Kilburn,RC Miller,Jr。和RAJ Warren, J.Bacteriol.173:308-314,1991)。 608个氨基酸的催化结构域在N末端。催化结构域中的前477个氨基酸的序列与E族纤维素酶的序列有关,其中包括原核和真核酶。催化结构域的最后131个氨基酸的序列与来自不同家族的许多纤维素酶中存在的序列有关。单独的催化结构域可以结合纤维素,并且该结合至少部分地由C末端131个氨基酸介导。这些131个氨基酸的缺失减少但不消除活性。催化结构域之后是三个结构域,它们是98个氨基酸序列的重复。该重复与来自圆环芽孢杆菌的几丁质酶中与纤连蛋白III型重复相关的95个氨基酸的两个重复大约50%相同(T.渡边,K.Suzuki,K.Oyanagi,K.Ohnishi和H.Tanaka, J.Biol.Chem.265:15659-15665,1990)。 101个氨基酸的C端结构域与存在于不同家族的许多细菌纤维素酶和木聚糖酶中的序列有关,这些序列形成纤维素结合域(CBD)。当与异源多肽融合时,它起着CBD的作用。表达野生型cenB基因的大肠杆菌细胞会积聚天然CenB和41 kDa的稳定蛋白水解片段,该片段包含三个重复序列和C端CBD。 41-kDa多肽与纤维素结合,但缺乏酶促活性。

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